首页> 外文期刊>Arid Zone Journal of Engineering, Technology and Environment >Hydrogeological and Engineering Investigations of Gully Sites in Zing and Environs, Northeastern Nigeria
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Hydrogeological and Engineering Investigations of Gully Sites in Zing and Environs, Northeastern Nigeria

机译:尼日利亚东北部沟壑区沟壑区的水文地质和工程研究

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The research area is characterized by problems of gully erosion which have resulted in the destruction of roads and uprooting trees of economic importance. Reduction in the area of arable and other agricultural land, which become divided into smaller parcels and leads to increased farming cost. Hydrogeological and engineering investigations were conducted in Zing and environs, Taraba State of Nigeria to characterize the rock materials that aid gully erosion in the area. The methods involve three (3) stages, reconnaissance survey, detailed field mapping and laboratory analysis. The area is underlain by porphyritic granite and Biotite granite. The geologic structures include fractures, dykes, and veins which trend NNW to SSE, NW-SE and NNE to SSW. The results of geotechnical parameters indicate that the plastic limit ranges between 0 to 24.2%, liquid limit ranges from 20.1% to 43.9%, plasticity index ranges between 11.2 to 19.7%. The coefficient of uniformity ranges between 4.2 and 11.5 while the coefficient of curvature ranged between 0.53 and 1.99. The optimum moisture content was from 8.3 to 9.8%, while maximum dry density is from 1.75 to 1.91mg/m3. The angle of internal friction was between 28° to 40°, while the cohesion is between 0 to 54KN/m2. The statistical grain size methods gave hydraulic conductivity values ranging from 2.35 x 10-3m/s to 8.64 x 10-5m/s. The hydraulic head distribution map indicates that the gully sites are located in the discharge areas. The discharge areas are characterized by high hydrostatic pressure which decreases effective stress and in turn reduces the shear strength of materials, enhance, internal erosion in form of piping and cave ins in the discharge areas. From the results of the study, recommendations such as sand mining/excavation along the rivers should be avoided, ridging perpendicular to river bank are reduced, dumping of refuse on the river channels and floodplains should be discouraged and houses should not be constructed along the river banks
机译:研究领域的特点是沟壑侵蚀问题,导致道路的破坏和经济重要性的拔起。减少了耕地和其他农业土地的面积,该土地分为较小的包裹,并导致耕作成本增加。在扎廷和环境中进行水文地质和工程调查,尼日利亚塔拉巴州塔拉巴州的岩石,以表征援助该地区沟壑侵蚀的岩石材料。该方法涉及三(3)个阶段,侦察调查,详细的现场测绘和实验室分析。该地区由卟啉花岗岩和Biotite花岗岩下划线。地质结构包括裂缝,堤坝和静脉,其趋向于SSE,NW-SE和NNE至SSW。岩土参数的结果表明,塑料极限范围为0至24.2%,液体限制范围为20.1%至43.9%,可塑性指数范围为11.2%至19.7%。均匀性系数范围为4.2和11.5,而曲率系数范围在0.53和1.99之间。最佳水分含量为8.3至9.8%,而最大干密度为1.75至1.91mg / m3。内部摩擦的角度在28°至40°之间,而内聚力在0至54kN / m 2之间。统计晶粒尺寸方法使液压导电值范围为2.35×10-3m / s至8.64×10-5m / s。液压头分布图表明沟槽位点位于放电区域中。放电区域的特征在于高静压压力,降低有效应力,又降低了物料的剪切强度,在放电区域中的管道和洞穴中的形式的剪切强度。从研究结果来看,应避免沿线沿河的沙坑/挖掘等建议,垂直于河岸的船舶减少,倾销河道和洪水平台应该被泄漏,并且不应沿河建造房屋银行

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